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首页> 外文期刊>Progress in Organic Coatings: An International Review Journal >Biodegradable and thermostable synthetic hyperbranched poly(urethane-urea)s as advanced surface coating materials
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Biodegradable and thermostable synthetic hyperbranched poly(urethane-urea)s as advanced surface coating materials

机译:可生物降解和热稳定的合成超支化聚氨基甲酸酯-尿素,作为高级表面涂料

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摘要

Aliphatic hyperbranched poly(urethane-urea)s with different weight percentages of branch generating moiety were synthesized by a one pot A_2 +BC_2 approach. Isophorone diisocyanate was used as the A_2 type monomer, while a tri-functional dihydroxyamine compound synthesized from ε-caprolactam and diethanol amine acted as the BC_2 monomer. Evidence supporting the hyperbranched structure of the synthesized poly(urethane-urea) was obtained from ~1H NMR spectra. FTIR study confirmed the nature and extent of hydrogen bonding present in this novel macromolecule. A Gaussian band fitting procedure of the IR band at amide-I region showed that the extent of hydrogen bonding increases with the increase of weight percentage of the tri-functional compound. The tensile strength, elongation at break, impact resistance, scratch hardness and gloss followed an increasing trend with the same. The thermal degradation of the hyperbranched poly(urethane-urea) was found to be dependent on the weight percentage of the BC2 type moiety. The kinetics of thermal degradation studied by the Ozawa method showed that the activation energy required for thermal degradation of hyperbranched polymer is higher than its linear polyurethane analog. The synthesized polymer was found to be biodegradable by Pseudomonas aeruginosa bacteria. The study showed superiority of the hyperbranched structure over the linear one. Thus the results indicated the potential usage of the studied hyperbranched poly(urethane-urea) as an advanced surface coating material.
机译:通过一锅A_2 + BC_2方法合成了具有不同重量百分比的支链生成部分的脂肪族超支化聚(氨基甲酸酯-脲)。异佛尔酮二异氰酸酯用作A_2型单体,而由ε-己内酰胺和二乙醇胺合成的三官能二羟胺化合物用作BC_2单体。从〜1H NMR光谱获得了支持合成的聚(氨基甲酸酯-脲)超支化结构的证据。 FTIR研究证实了这种新型大分子中氢键的性质和程度。酰胺-I区域的IR带的高斯谱带拟合过程表明,氢键的程度随三官能化合物的重量百分比的增加而增加。拉伸强度,断裂伸长率,耐冲击性,耐刮擦性和光泽度随其增加趋势。发现超支化聚(尿烷-脲)的热降解取决于BC2型部分的重量百分比。用Ozawa方法研究的热降解动力学表明,超支化聚合物热降解所需的活化能高于其线性聚氨酯类似物。发现合成的聚合物可被铜绿假单胞菌细菌降解。研究表明,超支化结构优于线性结构。因此,结果表明所研究的超支化聚(尿烷-脲)作为高级表面涂料的潜在用途。

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